首页> 外文期刊>Journal of Energy Storage >Electrochemical characterization of RuO_2 and activated carbon (AC) electrodes using multivalent Ni(NO_3)_2 electrolyte for charge storage applications
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Electrochemical characterization of RuO_2 and activated carbon (AC) electrodes using multivalent Ni(NO_3)_2 electrolyte for charge storage applications

机译:使用多价Ni(NO_3)_2电解质进行电荷存储应用的Ruo_2和活性炭(AC)电极的电化学表征

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摘要

Among various transition metal oxides, Ruthenium oxide (RuO2) has been widely studied for its high ionic conductivity, excellent electrochemical reversibility and superior pseudocapacitive properties. However, it is significantly expensive from the practical applications point of view. On the other hand, activated carbon (AC) has been an attractive choice for electrochemical double layer supercapacitors due to its tailorable porosity and surface area, high electronic conductivity and low cost. In the current study, we examined the electrochemical behavior of nanocrystalline RuO2 against AC in an asymmetric configuration using a multivalent aqueous Ni (NO3)(2) electrolyte with a purpose to understand the applicability of a multivalent and inexpensive Ni based electrolyte for charge storage in RuO2 electrodes. The electrochemical characterization of asymmetric RuO2/AC cells in 1M aqueous Ni(NO3)(2) electrolyte revealed a maximum specific capacitance of 248 Fg(-1) for RuO2 electrodes with a retention of 93.9% of its initial capacitance over one thousand cycles. These results demonstrated the viability of charge storage in RuO2 and AC electrodes using multivalent Ni2+ ion/electrolyte while shedding the light on possible changes in the crystallinity and surface chemistry of RuO2 electrode.
机译:在各种过渡金属氧化物中,氧化钌(RuO2)已被广泛研究其高离子电导率,优异的电化学可逆性和优异的假壳特性。然而,从实际应用的角度来看,它非常昂贵。另一方面,由于其可定制的孔隙率和表面积,高电子导电性和低成本,活性炭(AC)对于电化学双层超级电容器具有吸引力的选择。在目前的研究中,我们使用多价Ni(NO 3)(2)电解质在不对称配置中将纳米晶RuO2对AC的电化学行为检测,以了解多价和廉价Ni基电解质的适用性进行电荷存储Ruo2电极。 1M含水Ni(NO 3)(2)电解质中不对称RuO2 / Ac细胞的电化学表征显示Ruo2电极248 fg(-1)的最大比电容,其初始电容的保留为93.9%。这些结果证明了使用多价Ni2 +离子/电解质在RuO2和Ac电极中的存活率,同时在ruO2电极的结晶度和表面化学中的可能变化上脱落。

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